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Electrochemical chloride removal and protection of concrete bridge components (injection of synergistic corrosion inhibitors)

Author: Marianna F Asaro; Ann T Gaynor; Samson Hettiarachchi; SRI International.; Strategic Highway Research Program (U.S.)
Publisher: Washington, D.C. : Strategic Highway Research Program, National Research Council, [1990]
Edition/Format:   Print book : EnglishView all editions and formats
Summary:
This is a feasibility study of the injection of synergistic corrosion inhibitors for protection of concrete bridge components. The research developed electrically injectable corrosion inhibitors that provide 78-85% corrosion protection for the rebars. This technology can be further improved to provide 90-100% corrosion protection for rebar steel. Inhibitor injection requires approximately 1,000 times higher current  Read more...
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Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Marianna F Asaro; Ann T Gaynor; Samson Hettiarachchi; SRI International.; Strategic Highway Research Program (U.S.)
OCLC Number: 23186177
Notes: Cover title.
"October 1990"--Page 2 of cover.
"SHRP-S/FR-90-002."
Description: iv, 53 pages ; 28 cm
Contents: Executive summary --
Experimental details --
Electromigration studies --
Inhibitor injection studies --
Results and discussion --
Accomplishments and conclusions --
Recommendations --
References.
Responsibility: Marianna F. Asaro, Ann T. Gaynor, Samson Hettiarachchi (SRI International).

Abstract:

This is a feasibility study of the injection of synergistic corrosion inhibitors for protection of concrete bridge components. The research developed electrically injectable corrosion inhibitors that provide 78-85% corrosion protection for the rebars. This technology can be further improved to provide 90-100% corrosion protection for rebar steel. Inhibitor injection requires approximately 1,000 times higher current densities than those used for cathodic protection. The experimental details are described, and the details are given of the electromigration studies, and the inhibitor studies. The results are presented and discussed.

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Primary Entity

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